Abstract
AbstractExposure to cosmic ionizing radiation is an innate risk of the spaceflight environment that can cause DNA damage and altered cellular function. In astronauts, longitudinal monitoring of physiological systems and interactions between these systems are important to consider for mitigation strategies. In addition, assessments of sex-specific biological responses in the unique environment of spaceflight are vital to support future exploration missions that include both females and males. Here we assessed sex-specific, multi-system immune and endocrine responses to simulated cosmic radiation. For this, 24-week-old, male and female C57Bl/6J mice were exposed to simplified five-ion, space-relevant galactic cosmic ray (GCRsim) radiation at 15 and 50 cGy, to simulate predicted radiation exposures that would be experienced during lunar and Martian missions, respectively. Blood and adrenal tissues were collected at 3- and 14-days post-irradiation for analysis of immune and endocrine biosignatures and pathways. Sexually dimorphic adrenal gland weights and morphology, differential total RNA expression with corresponding gene ontology, and unique immune phenotypes were altered by GCRsim. In brief, this study offers new insights into sexually dimorphic immune and endocrine kinetics following simulated cosmic radiation exposure and highlights the necessity for personalized translational approaches for astronauts during exploration missions.
Funder
NASA Space Biology Program, Spaceflight Research Opportunities in Space Biology
NASA Human Research Program
NASA Human Factors Behavioral Performance Element Grant
Embry-Riddle Aeronautical University Start Up Fund
Publisher
Springer Science and Business Media LLC
Reference56 articles.
1. Simonsen, L. C., Slaba, T. C., Guida, P. & Rusek, A. NASA’s first ground-based galactic cosmic ray simulator: Enabling a new era in space radiobiology research. PLoS Biol. 18, e3000669 (2020).
2. Crucian, B. E. et al. Immune system dysregulation during spaceflight: potential countermeasures for deep space exploration missions. Front. Immunol. 9, 1437 (2018).
3. Pecaut, M. J. et al. Is spaceflight-induced immune dysfunction linked to systemic changes in metabolism?. PLoS ONE 12, e0174174 (2017).
4. Cruz-Topete, D. & Cidlowski, J. A. One hormone, two actions: Anti- and pro-inflammatory effects of glucocorticoids. NeuroImmuno Modul. 22, 20–32 (2015).
5. Rummell, J. A., Sawin, C. F., Buderer, M. C., Mauldin, D. G. & Michel, E. L. Physiological response to exercise after space flight–Apollo 14 through Apollo 17. Aviat. Space Environ. Med. 46, 679–683 (1975).
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